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Effect of nanoparticle Al2O3 addition on microstructure and mechanical properties of 7075 alloy

机译:纳米Al2O3的添加对7075合金组织和力学性能的影响。

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摘要

Aluminium alloy matrix composites reinforced with 0.5, 1.0, 1.5 and 2.5 wt-% nanoparticle Al2O3 were fabricated by low frequency mechanical vibration combined with multi-frequency ultrasonic treatment. A microstructural study was carried out by optical, scanning electron and transmission electron microscopy and X-ray diffraction. The effect of reinforcements on the microstructural feature of the composites was investigated. Tensile and compression tests were carried out in order to identify the mechanical properties. The results of the microstructural study revealed a uniform distribution of nanoparticles in the matrix and dendrite refinement of the matrix alloy. It was also found that adding reinforcement content beyond 1.5 wt-% led to an increase in dendrite size values. Compared to the 7075 alloy, the yield strength, ultimate tensile strength and 0.2 compressive yield strength of 1.5 wt-% nano-Al2O3/7075 composite were increased by 74%, 57% and 100% respectively. The improved mechanical properties were due to particle pushing dendrite refinement and particle strengthening.
机译:通过低频机械振动结合多频超声处理,制备了以0.5、1.0、1.5和2.5 wt%的纳米颗粒Al2O3增强的铝合金基复合材料。通过光学,扫描电子和透射电子显微镜以及X射线衍射进行了微观结构研究。研究了增强剂对复合材料微观结构特征的影响。为了确定机械性能,进行了拉伸和压缩测试。微观结构研究的结果表明,纳米粒子在基体中均匀分布,并且基体合金的枝晶细化。还发现添加超过1.5重量%的增强含量导致枝晶尺寸值的增加。与7075合金相比,1.5 wt%纳米Al2O3 / 7075复合材料的屈服强度,极限抗拉强度和0.2压缩屈服强度分别提高了74%,57%和100%。改进的机械性能归因于颗粒推动枝晶的细化和颗粒强化。

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